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Evidence for freely chosen pedalling rate during submaximal cycling to be a robust innate voluntary motor rhythm

机译:次最大循环过程中自由选择的踩踏速度是有力的先天性自主运动节律的证据

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Freely chosen pedalling rate during cycling represents a voluntary rhythmic movement. It is unclear to what extent this is influenced by internal (e.g. loading on the cardiopulmonary system) and external (e.g. mechanical loading) conditions. It is also unclear just how robust a voluntary motor rhythm, the freely chosen pedalling rate, actually is. The present study investigated (N = 8) whether or not the freely chosen pedalling rate during submaximal cycling was affected by separate increases in loading on the cardiopulmonary system (changed by exposure to acute simulated altitude of 3,000 m above sea level) and mechanical loading (changed by exposure to increased power output and thereby pedal force). We also investigated (N = 7) whether or not the freely chosen pedalling rate and another voluntary motor rhythm, unimanual unloaded index finger tapping rate, shared common characteristics of steadiness and individuality over a 12-week period. Results showed that the freely chosen pedalling rate was unaffected by increased loading on the cardiopulmonary system at constant mechanical loading, and vice versa. Further, the pedalling rate was steady in the longitudinal perspective (as was the tapping rate), and like tapping rate, pedalling rate was highly individual. In total this indicated that freely chosen pedalling rate primarily is a robust innate voluntary motor rhythm, likely under primary influence of central pattern generators that again are minimally affected by internal and external conditions during submaximal cycling.
机译:在骑行过程中自由选择的踩踏速度代表有节奏的运动。目前尚不清楚这在多大程度上受内部(例如,心肺系统负荷)和外部(例如,机械负荷)状况的影响。同样不清楚的是,自愿运动节奏,自由选择的踩踏速度到底有多强。本研究调查了(N = 8)次最大循环期间自由选择的踩踏速度是否受到心肺系统负荷的单独增加(因暴露于海拔3,000 m的急性模拟高度而改变)和机械负荷(暴露于增加的功率输出,从而改变踏板力)。我们还调查了(N = 7)自由选择的踩踏速度和另一种自愿运动节奏,单手空置食指敲击速度,在12周内是否具有共同的稳定性和个性特征。结果表明,在恒定的机械负荷下,自由选择的踩踏速度不受心肺系统负荷增加的影响,反之亦然。此外,踩踏率在纵向上是稳定的(拍击率也一样),并且像拍击率一样,踩踏率是高度个体的。总体而言,这表明自由选择的踩踏速度主要是强大的先天性自发运动节奏,可能是在中央模式发生器的主要影响下产生的,而在次最大循环期间,这种模式又受内部和外部条件的影响最小。

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